Based on the Internet of things environment data aggregation security requirements and key technology research

Author(s):  
Yunli Cheng ◽  
Min Huang
2018 ◽  
Vol 2018 ◽  
pp. 1-16 ◽  
Author(s):  
Yuwen Chen ◽  
Lourdes López ◽  
José-Fernán Martínez ◽  
Pedro Castillejo

Different data are collected by diverse sensors under an Internet of things scenario, such as health data, environmental data, and traffic flow data. People can access data remotely via the Internet easily. Considering the importance and confidentiality of these data, it is necessary to ensure the data security. In this study, we propose an authentication and key establishment scheme for an Internet of things scenario based on low-capability devices. This scheme achieves many security features: user anonymity, sensor anonymity, forward secrecy, resistance to the loss of synchronization problem, and so on We verified these security features using AVISPA and ProVerif; both results show that the scheme is safe enough to achieve the security requirements. Besides, the experiment results elucidate that this scheme gains an advantage in computation and communication costs. It is because of the sole usage of XOR operations and hash functions as well as a minimal amount of asymmetric encryptions to fulfil forward secrecy.


Sensors ◽  
2018 ◽  
Vol 18 (6) ◽  
pp. 1920 ◽  
Author(s):  
Juanli Li ◽  
Jiacheng Xie ◽  
Zhaojian Yang ◽  
Junjie Li

Author(s):  
Konstantinos Kotis ◽  
Artem Katasonov

Internet of Things should be able to integrate an extremely large amount of distributed and heterogeneous entities. To tackle heterogeneity, these entities will need to be consistently and formally represented and managed (registered, aligned, composed and queried) trough suitable abstraction technologies. Two distinct types of these entities are a) sensing/actuating devices that observe some features of interest or act on some other entities (call it ‘smart entities’), and b) applications that utilize the data sensed from or sent to the smart entities (call it ‘control entities’). The aim of this paper is to present the Semantic Smart Gateway Framework for supporting semantic interoperability between these types of heterogeneous IoT entities. More specifically, the paper describes an ontology as the key technology for the abstraction and semantic registration of these entities, towards supporting their automated deployment. The paper also described the alignment of IoT entities and of their exchanged messages. More important, the paper presents a use case scenario and a proof-of-concept implementation.


2014 ◽  
Vol 998-999 ◽  
pp. 1374-1377
Author(s):  
Da Hui Li

This article introduces the services and development of the Internet of Things, and analyzes the driving forces and obstacles behind such development. Looking at application types and the different development stages of the Internet of Things, this article categorizes its services into four types: identity related services, information aggregation services, collaborative-aware services, and ubiquitous services. For the first two types of services, applications and system framework are discussed; for the last two types, development trends are discussed. Services provided by the Internet of Things will gradually be integrated into human life and society; with the development of the Internet of Things, applications will evolve from relatively simple identity-related and information aggregation-related applications, to collaboratively-aware and finally ubiquitous applications. It will then be possible for the Internet of Things to be fully integrated with Internet and telecommunications networks


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